Title of article
Non-hydrostatic semi-elastic hybrid-coordinate SISL extension of HIRLAM. Part II: numerical testing
Author/Authors
REIN R??M، نويسنده , , AARNE M?NNIK، نويسنده , , And RES LUHAMAA، نويسنده , , MARKO ZIRK، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
13
From page
661
To page
673
Abstract
The semi-implicit semi-Lagrangian (SISL), two-time-level, non-hydrostatic numerical scheme, based on the nonhydrostatic,
semi-elastic pressure-coordinate equations, is tested in model experiments with flow over given orography
(elliptical hill, mountain ridge, system of successive ridges) in a rectangular domain with emphasis on the numerical
accuracy and non-hydrostatic effect presentation capability. Comparison demonstrates good (in strong primary wave
generation) to satisfactory (in weak secondary wave reproduction in some cases) consistency of the numerical modelling
results with known stationary linear test solutions. Numerical stability of the developed model is investigated with
respect to the reference state choice, modelling dynamics of a stationary front. The horizontally area-mean reference
temperature proves to be the optimal stabilitywarrant. The numerical scheme with explicit residual in the vertical forcing
term becomes unstable for cross-frontal temperature differences exceeding 30 K. Stability is restored, if the vertical
forcing is treated implicitly, which enables to use time steps, comparable with the hydrostatic SISL.
Journal title
Tellus. Series A
Serial Year
2007
Journal title
Tellus. Series A
Record number
436670
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